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2022-11-11Merge branch 'master' into refactor-mesh-position-genericrefactor-mesh-position-genericHans Goudey
2022-11-05Cleanup: Remove unnecessary node type registraction functionsHans Goudey
These functions provided little benefit compared to simply setting the function pointers directly.
2022-10-07Merge branch 'master' into refactor-mesh-position-genericHans Goudey
2022-10-04Cleanup: replace UNUSED macro with commented args in C++ codeHans Goudey
This is the conventional way of dealing with unused arguments in C++, since it works on all compilers. Regex find and replace: `UNUSED\((\w+)\)` -> `/*$1*/`
2022-10-03Merge branch 'master' into refactor-mesh-position-genericHans Goudey
2022-09-28Geometry Nodes: viewport previewJacques Lucke
This adds support for showing geometry passed to the Viewer in the 3d viewport (instead of just in the spreadsheet). The "viewer geometry" bypasses the group output. So it is not necessary to change the final output of the node group to be able to see the intermediate geometry. **Activation and deactivation of a viewer node** * A viewer node is activated by clicking on it. * Ctrl+shift+click on any node/socket connects it to the viewer and makes it active. * Ctrl+shift+click in empty space deactivates the active viewer. * When the active viewer is not visible anymore (e.g. another object is selected, or the current node group is exit), it is deactivated. * Clicking on the icon in the header of the Viewer node toggles whether its active or not. **Pinning** * The spreadsheet still allows pinning the active viewer as before. When pinned, the spreadsheet still references the viewer node even when it becomes inactive. * The viewport does not support pinning at the moment. It always shows the active viewer. **Attribute** * When a field is linked to the second input of the viewer node it is displayed as an overlay in the viewport. * When possible the correct domain for the attribute is determined automatically. This does not work in all cases. It falls back to the face corner domain on meshes and the point domain on curves. When necessary, the domain can be picked manually. * The spreadsheet now only shows the "Viewer" column for the domain that is selected in the Viewer node. * Instance attributes are visualized as a constant color per instance. **Viewport Options** * The attribute overlay opacity can be controlled with the "Viewer Node" setting in the overlays popover. * A viewport can be configured not to show intermediate viewer-geometry by disabling the "Viewer Node" option in the "View" menu. **Implementation Details** * The "spreadsheet context path" was generalized to a "viewer path" that is used in more places now. * The viewer node itself determines the attribute domain, evaluates the field and stores the result in a `.viewer` attribute. * A new "viewer attribute' overlay displays the data from the `.viewer` attribute. * The ground truth for the active viewer node is stored in the workspace now. Node editors, spreadsheets and viewports retrieve the active viewer from there unless they are pinned. * The depsgraph object iterator has a new "viewer path" setting. When set, the viewed geometry of the corresponding object is part of the iterator instead of the final evaluated geometry. * To support the instance attribute overlay `DupliObject` was extended to contain the information necessary for drawing the overlay. * The ctrl+shift+click operator has been refactored so that it can make existing links to viewers active again. * The auto-domain-detection in the Viewer node works by checking the "preferred domain" for every field input. If there is not exactly one preferred domain, the fallback is used. Known limitations: * Loose edges of meshes don't have the attribute overlay. This could be added separately if necessary. * Some attributes are hard to visualize as a color directly. For example, the values might have to be normalized or some should be drawn as arrays. For now, we encourage users to build node groups that generate appropriate viewer-geometry. We might include some of that functionality in future versions. Support for displaying attribute values as text in the viewport is planned as well. * There seems to be an issue with the attribute overlay for pointclouds on nvidia gpus, to be investigated. Differential Revision: https://developer.blender.org/D15954
2022-09-13Convert many more uses of MVertHans Goudey
2022-09-12Start converting mesh positions to a generic attributeHans Goudey
2022-09-08Cleanup: Use C++ methods to retrieve attribute accessorsHans Goudey
Replace `mesh_attributes`, `mesh_attributes_for_write` and the point cloud versions with methods on the `Mesh` and `PointCloud` types. This makes them friendlier to use and improves readability. Differential Revision: https://developer.blender.org/D15907
2022-09-07Cleanup: Tweak naming for recently added mesh accessorsHans Goudey
Use `verts` instead of `vertices` and `polys` instead of `polygons` in the API added in 05952aa94d33eeb50. This aligns better with existing naming where the shorter names are much more common.
2022-09-05Mesh: Remove redundant custom data pointersHans Goudey
For copy-on-write, we want to share attribute arrays between meshes where possible. Mutable pointers like `Mesh.mvert` make that difficult by making ownership vague. They also make code more complex by adding redundancy. The simplest solution is just removing them and retrieving layers from `CustomData` as needed. Similar changes have already been applied to curves and point clouds (e9f82d3dc7ee, 410a6efb747f). Removing use of the pointers generally makes code more obvious and more reusable. Mesh data is now accessed with a C++ API (`Mesh::edges()` or `Mesh::edges_for_write()`), and a C API (`BKE_mesh_edges(mesh)`). The CoW changes this commit makes possible are described in T95845 and T95842, and started in D14139 and D14140. The change also simplifies the ongoing mesh struct-of-array refactors from T95965. **RNA/Python Access Performance** Theoretically, accessing mesh elements with the RNA API may become slower, since the layer needs to be found on every random access. However, overhead is already high enough that this doesn't make a noticible differenc, and performance is actually improved in some cases. Random access can be up to 10% faster, but other situations might be a bit slower. Generally using `foreach_get/set` are the best way to improve performance. See the differential revision for more discussion about Python performance. Cycles has been updated to use raw pointers and the internal Blender mesh types, mostly because there is no sense in having this overhead when it's already compiled with Blender. In my tests this roughly halves the Cycles mesh creation time (0.19s to 0.10s for a 1 million face grid). Differential Revision: https://developer.blender.org/D15488
2022-08-30Geometry Nodes: Use separate field context for each geometry typeHans Goudey
Using the same `GeometryComponentFieldContext` for all situations, even when only one geometry type is supported is misleading, and mixes too many different abstraction levels into code that could be simpler. With the attribute API moved out of geometry components recently, the "component" system is just getting in the way here. This commit adds specific field contexts for geometry types: meshes, curves, point clouds, and instances. There are also separate field input helper classes, to help reduce boilerplate for fields that only support specific geometry types. Another benefit of this change is that it separates geometry components from fields, which makes it easier to see the purpose of the two concepts, and how they relate. Because we want to be able to evaluate a field on just `CurvesGeometry` rather than the full `Curves` data-block, the generic "geometry context" had to be changed to avoid using `GeometryComponent`, since there is no corresponding geometry component type. The resulting void pointer is ugly, but only turns up in three places in practice. When Apple clang supports `std::variant`, that could be used instead. Differential Revision: https://developer.blender.org/D15519
2022-07-14Fix build and warnings from previous commit.Chris Blackbourn
2022-07-08Geometry Nodes: new geometry attribute APIJacques Lucke
Currently, there are two attribute API. The first, defined in `BKE_attribute.h` is accessible from RNA and C code. The second is implemented with `GeometryComponent` and is only accessible in C++ code. The second is widely used, but only being accessible through the `GeometrySet` API makes it awkward to use, and even impossible for types that don't correspond directly to a geometry component like `CurvesGeometry`. This patch adds a new attribute API, designed to replace the `GeometryComponent` attribute API now, and to eventually replace or be the basis of the other one. The basic idea is that there is an `AttributeAccessor` class that allows code to interact with a set of attributes owned by some geometry. The accessor itself has no ownership. `AttributeAccessor` is a simple type that can be passed around by value. That makes it easy to return it from functions and to store it in containers. For const-correctness, there is also a `MutableAttributeAccessor` that allows changing individual and can add or remove attributes. Currently, `AttributeAccessor` is composed of two pointers. The first is a pointer to the owner of the attribute data. The second is a pointer to a struct with function pointers, that is similar to a virtual function table. The functions know how to access attributes on the owner. The actual attribute access for geometries is still implemented with the `AttributeProvider` pattern, which makes it easy to support different sources of attributes on a geometry and simplifies dealing with built-in attributes. There are different ways to get an attribute accessor for a geometry: * `GeometryComponent.attributes()` * `CurvesGeometry.attributes()` * `bke::mesh_attributes(const Mesh &)` * `bke::pointcloud_attributes(const PointCloud &)` All of these also have a `_for_write` variant that returns a `MutabelAttributeAccessor`. Differential Revision: https://developer.blender.org/D15280
2022-07-06Fix T99284: Undefined values output from UV nodesHans Goudey
When committing D14389 I assumed that the output arrays didn't need to be initialized, but the UV parameterizer uses the intial values of UVs.
2022-06-29Geometry Nodes: UV Unwrap and Pack Islands NodesAleksi Juvani
This commit adds new Unwrap and Pack Islands nodes, with equivalent functionality to the existing Unwrap and Pack Islands operators. The Unwrap node uses generic boolean attributes to determine seams instead of looking at the seam flags in the mesh geometry. Unlike the Unwrap operator, the Unwrap node doesn't perform aspect ratio correction, because this is trivial for the user to implement with a Vector Math node if it is desired. The Unwrap node implicitly performs a Pack Islands operation upon completion, because the results may not be generally useful otherwise. This matches the behaviour of the Unwrap operator. The nodes use the existing Vector socket type, and do not introduce a new 2D Vector type (see T92765). Differential Revision: https://developer.blender.org/D14389